Abstract
AbstractIn this manuscript, plasmonic nano patch antenna on the graphene material is designed and analyzed. The conductivity of the graphene material is modeled using Kubo conductivity formula and it is tuned using chemical potential of graphene. Further, analysis of Drude dispersive model for the graphene matrial exhibits negative real permittivity which is the required criterion for the plasmonic resonance. The designed graphene nano patch antenna provides a gain of 3.52 dB at 30 THz frequency which is suitable for terahertz communication. It is demonstrated that the graphene nano patch antenna resonates at multiple frequencies by varying the chemical potential and three resonating frequencies 30, 115, 176 THz with good characteristics are observed at 1.3 eV chemical potential. The gain of the graphene nano patch antenna is enhanced approximately three times by changing the shape of the patch from square to L-shape.
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences,General Physics and Astronomy,General Engineering,General Environmental Science,General Materials Science,General Chemical Engineering
Reference22 articles.
1. Jornet JM, Akyildiz IF (2013) Fundamentals of electromagnetic nanonetworks in the terahertz band. Found TrendsNetw 7(2–3):77–233
2. Llatser I, Kremers C, Cabellos-Aparicio A, Jornet JM, Alarcón E, Chigrin DN (2012) Graphene-based nano-patch antenna for terahertz radiation. Photo Nanostruct Fundam Appl J 10(4):353–358
3. Yao Y, Kats MA, Shankar R, Song Y, Kong J, Loncar M, Capasso F (2014) Wide wavelength tuning of optical antennas on graphene with nanosecond response time. Nano Lett 14:214–219
4. Dash S, Patnaik A (2018) Performance of graphene plasmonic antenna in comparison with their counterparts for low-terahertz applications. Plasmonics J 13:2353–2360
5. Jornet JM, Akyildiz IF (2010) Graphene-based nano-antennas for electromagnetic nanocommunications in the terahertz band. In: Proceedings of the 4th European conference on antennas and propagation, pp 1–5
Cited by
21 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献